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首页> 外文期刊>Acta Orthopaedica et Traumatologica Turcica >Biomechanical comparison of orthogonal versus parallel double plating systems in intraarticular distal humerus fractures
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Biomechanical comparison of orthogonal versus parallel double plating systems in intraarticular distal humerus fractures

机译:肱骨远端骨折中正交和平行双板系统的生物力学比较

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Objectives In intraarticular distal humerus fractures, internal fixation with double plates is the gold standard treatment. However the optimal plate configuration is not clear in the literature. The aim of this study was to compare the biomechanical stability of the parallel and the orthogonal anatomical locking plating systems in intraarticular distal humerus fractures in artificial humerus models. Methods Intraarticular distal humerus fracture (AO13-C2) with 5?mm metaphyseal defect was created in sixteen artificial humeral models. Models were fixed with either orthogonal or parallel plating systems with locking screws (Acumed elbow plating systems). Both systems were tested for their stiffness with loads in axial compression, varus, valgus, anterior and posterior bending. Then plastic deformation after cyclic loading in posterior bending and load to failure in posterior bending were tested. The failure mechanisms of all the samples were observed. Results Stiffness values in every direction were not significantly different among the orthogonal and the parallel plating groups. There was no statistical difference between the two groups in plastic deformation values (0.31?mm–0.29?mm) and load to failure tests in posterior bending (372.4?N–379.7?N). In the orthogonal plating system most of the failures occurred due to the proximal shaft fracture, whereas in the parallel plating system failure occurred due to the shift of the most distal screw in proximal fragment. Conclusion Our study showed that both plating systems had similar biomechanical stabilities when anatomic plates with distal locking screws were used in intraarticular distal humerus fractures in artificial humerus models.
机译:目的在肱骨远端关节内骨折中,双板内固定是金标准治疗。然而,最佳的板构造在文献中尚不清楚。这项研究的目的是在人工肱骨模型中比较肱骨远端关节内骨折中平行和正交解剖锁定钢板系统的生物力学稳定性。方法在16个人工肱骨模型中创建具有5?mm干phy端缺损的肱骨远端肱骨骨折(AO13-C2)。模型用带锁紧螺钉的正交或平行电镀系统固定(肘式电镀系统)。在轴向压缩,内翻,外翻,前弯和后弯的载荷下测试了这两个系统的刚度。然后测试后弯弯曲循环载荷后的塑性变形和后弯弯曲破坏载荷。观察了所有样品的失效机理。结果正交和平行电镀组在各个方向的刚度值没有显着差异。两组之间的塑性变形值(0.31?mm–0.29?mm)和后弯曲的破坏测试(372.4?N–379.7?N)之间没有统计学差异。在正交电镀系统中,大多数失败是由于近端轴断裂引起的,而在平行电镀系统中,失败是由于最远端的螺钉在近端碎片中的移位而发生的。结论我们的研究表明,当在人工肱骨模型中,将带有远端锁定螺钉的解剖板用于肱骨远端肱骨骨折时,两种电镀系统具有相似的生物力学稳定性。

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